WO2017181999A1 - 洗衣机上盖止挡结构及全自动洗衣机 - Google Patents

洗衣机上盖止挡结构及全自动洗衣机 Download PDF

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Publication number
WO2017181999A1
WO2017181999A1 PCT/CN2017/081520 CN2017081520W WO2017181999A1 WO 2017181999 A1 WO2017181999 A1 WO 2017181999A1 CN 2017081520 W CN2017081520 W CN 2017081520W WO 2017181999 A1 WO2017181999 A1 WO 2017181999A1
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Prior art keywords
upper cover
buckle
washing machine
stop structure
machine according
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PCT/CN2017/081520
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English (en)
French (fr)
Inventor
宋立军
程宝珍
孙广彬
王秀梅
张开宏
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青岛海尔洗衣机有限公司
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Publication of WO2017181999A1 publication Critical patent/WO2017181999A1/zh

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/12Casings; Tubs
    • D06F39/14Doors or covers; Securing means therefor

Definitions

  • the present disclosure relates to the technical field of washing machines, for example, to a washing machine upper cover stop structure and a fully automatic washing machine having the same.
  • the automatic washing machine cover is an important component that blocks the inner barrel of the washing machine and the appearance environment. It can have the following functions: to ensure the cleaning of the inner tub and to avoid the user touching the high-speed rotating inner tub during the washing process to ensure the safety of the user.
  • the upper cover of the fully automatic washing machine is generally open to an angle of 92 degrees to 95 degrees with the horizontal plane, and it is not allowed to rotate backwards again, and the national standard stipulates that the upper cover is fully opened to ensure that it can withstand the backward 50N tension without being Destruction, which requires the upper cover to design the stop structure while ensuring its own strength.
  • the stop structure of the upper cover of the fully automatic washing machine on the market has problems of large structure, unsightly and poor safety.
  • the present disclosure provides a washing machine upper cover stop structure and a fully automatic washing machine having the same cover stop structure of the washing machine. Under the premise of achieving the stop function, the structure can be made more beautiful, and the leakage safety risk can be eliminated.
  • the embodiment provides a washing machine upper cover stop structure, which may include a control disc holder and an upper cover.
  • One end of the upper cover is reversibly disposed at one end of the control disc holder, and the upper cover is arranged on the array.
  • At least one buckle the control tray seat is provided with at least one buckle seat adapted to the buckle; when the upper cover is opened away from the control tray seat, the buckle is rotated until the buckle is The buckle seats abut.
  • the buckle is disposed on a lower surface of the upper cover and at an end of the upper cover.
  • the buckle may be a wedge buckle
  • the buckle seat may be opened on the control panel A hook that cooperates with the shape of the buckle, the end surface of the wedge buckle abuts against the upper wall of the hook to limit the flip of the upper cover.
  • control disc holder is provided with an arcuate groove adapted to the rotation trajectory of the buckle, and the buckle seat is disposed in the arcuate groove or with the arc groove Connected.
  • the lower surface of the upper cover is provided with an arcuate protrusion connected to the buckle, and the shape of the arcuate protrusion is adapted to the shape of the arcuate groove.
  • the end of the upper cover may further be provided with a rotating shaft, and the corresponding position of the control disc holder may be provided with a shaft hole, and the upper cover is rotatably connected to the control disc holder through the rotating shaft and the shaft hole.
  • a hinge is disposed between the upper cover and the control tray, and the upper cover and the control tray are rotationally connected by a hinge.
  • a buffer device may be disposed between the upper cover and the control panel to smoothly rotate the upper cover relative to the control tray.
  • the buckle, the curved protrusion and the upper cover are a unitary structure
  • the buckle seat, the arc groove and the control disk seat are a unitary structure.
  • This embodiment also proposes a fully automatic washing machine comprising any of the above-mentioned washing machine upper cover stop structures as described above.
  • a buckle seat matching the buckle is disposed on the control tray seat.
  • the buckle abuts against the buckle seat, thereby preventing the upper cover from continuing. Rotate backwards and support the upper cover to achieve the stop of the upper cover and the control tray.
  • the at least one buckle is used to abut against the buckle seat, which can ensure that the upper cover can withstand more than 50N pulling force without being damaged when the upper cover is completely opened; wherein the buckle structure is simple and the concealing property is good, and the related technology is avoided.
  • the raised structure affects the appearance of the product and wastes the material, which can save production cost.
  • the design of the buckle seat eliminates the safety hazard of the electrical device caused by the opening of the hole in the control tray, which causes the water to flow into the control tray. Under the premise of stop function, the use is safer and more reliable.
  • FIG. 1 is a schematic structural view of a top cover of a fully automatic washing machine provided by the related art.
  • FIG. 2 is a schematic structural view of a fully automatic washing machine control tray provided by the related art.
  • FIG. 3 is a schematic structural view of a fully automatic washing machine upper cover provided on the control disc base provided by the related art.
  • FIG. 4 is a schematic structural view of an upper cover provided in the first embodiment.
  • FIG. 5 is a schematic structural view of a control disc holder provided in the first embodiment.
  • Fig. 6 is a cross-sectional structural view showing the upper cover stop structure of the washing machine provided in the first embodiment.
  • control disc holder 11', stop wall; 2', upper cover; 21', projection.
  • the automatic washing machine cover 2' on the market utilizes two protrusions 21' symmetrically designed with the tail of the upper cover and two stop walls 11' correspondingly designed on the control panel 1'. A stop for the upper cover 2' is achieved.
  • the two protrusions 21' on the upper cover 2' are in contact with the stop wall 11' of the control disc holder 1', so that the upper cover 2' can no longer rotate about the rotation axis, thereby reaching the stop Effect.
  • this structure has the following disadvantages: the structure of the protrusion 21' of the upper cover 2' is generally large, affecting the aesthetics of the cover and also wasting material; such a stop structure needs to be correspondingly opened on the control panel 1' Two large square holes, so that water can easily flow from the two holes into the control socket to cause safety hazard of the electrical device.
  • the stop structure of the upper cover of the fully automatic washing machine has problems of large structure, unsightly, and poor safety.
  • the embodiment provides a cover structure for a washing machine, which can include control The disc holder 1 and the upper cover 2, one end of the upper cover 2 is reversibly disposed at one end of the control disc holder 1, wherein the lower surface of the upper cover 2 is disposed at an array near the end with at least one buckle 21 for controlling the disc holder 1 At least one buckle seat 11 corresponding to the buckle 21 is disposed; when the upper cover 2 is opened away from the control tray seat 1 , the buckle 21 can be rotated until the buckle 21 abuts the buckle seat 11 .
  • the lower surface of the upper cover 2 may refer to the surface of the upper cover near the control panel.
  • a buckle seat 11 matching the buckle 21 is disposed on the control disk holder 1, and the stationary convex structure is made movable, so that the upper cover 2 of the washing machine is fully opened.
  • the moving buckle 21 and the buckle seat 11 just start to function, so as to achieve the effect that the stop upper cover 2 continues to rotate.
  • a row of buckles 21 (shown in FIG. 4) is symmetrically designed on the lower surface of the upper cover 2 according to the strength requirement. Compared with the protruding structure in the related art, since the buckle 21 is small, the saving is certain. Raw materials. Moreover, the buckle 21 is located in a dark place, and the upper cover 2 can be fastened to ensure that the buckle 21 does not affect the appearance.
  • a row of buckles 21 corresponding to the upper cover 2 of the control disc holder 1 is also designed with a row of buckle seats 11 (as shown in FIG. 5). Since the buckle seat 11 does not cause a through hole on the control tray base 1, it will not There is water inflow to ensure safety.
  • the upper cover 2 When the upper cover 2 is fully opened, just when the buckle 21 is in contact with the buckle seat 11, due to the stop of the structure of the buckle seat 11, the upper cover 2 cannot continue to rotate to achieve the effect of the stop (as shown in FIG. 6). At the same time, it is also ensured that the upper cover 2 can withstand a pulling force of more than 50N backward without being damaged.
  • the upper cover 2 is evenly provided with five buckles 21, and the control socket 1 is uniformly provided with five buckle seats 11 corresponding thereto, and the buckle 21 is a wedge-shaped buckle, and the buckle seat 11 is opened at
  • the hook of the disc holder 1 that matches the outer shape of the buckle 21 is controlled, and the end surface of the wedge-shaped buckle abuts against the upper wall of the hook to restrict the turning of the upper cover 2.
  • the upper cover 2 is rotated by a certain angle with respect to the control disc holder 1, the upper end of the hook completely engages with the buckle 21, thereby blocking the rotation of the buckle 21 to position the upper cover 2 relative to the control disc holder 1 at the above fixed angle.
  • the control disc holder 1 is provided with an arcuate groove 12 adapted to the rotation trajectory of the buckle 21, and the buckle seat 11 is disposed in the arcuate groove 12 or connected to the arcuate groove 12. Accordingly, the portion of the lower surface of the upper cover 2 that is coupled to the buckle 21 is provided with an arcuate projection 22, the shape of which is adapted to the shape of the arcuate recess 12.
  • the buckle 21, the curved protrusion 22 and the upper cover 2 are provided as a one-piece structure, and the buckle seat 11, the curved groove 12 and the control disk holder 1 are also provided in an integrated structure.
  • the curved protrusion 22 abuts against the curved groove 12 and moves along the curved groove 12. Due to the elastic force between the two, the upper cover 2 is always open or closed. Smooth and without shaking, to ensure the reliability of the machine.
  • the material of the buckle 21 and the buckle seat 11 of the embodiment may be selected as a wear-resistant plastic material to improve the service life of the upper cover stop structure.
  • the end of the upper cover 2 of the embodiment is further provided with a rotating shaft 23, and the corresponding position of the control disc holder 1 is provided with a shaft hole 13, and the upper cover 2 is rotatably connected to the control disc holder 1 through the rotating shaft 23 and the shaft hole 13.
  • a buffer device may be disposed between the upper cover 2 and the control disk holder 1 to enable the upper cover 2 to smoothly rotate relative to the control disk holder 1.
  • This embodiment also proposes a fully automatic washing machine, which may include a washing machine upper cover stop structure as described above.
  • the automatic washing machine of the embodiment has the advantages of simple structure, lower cost, more beautiful appearance and better safety under the premise of achieving the stop function, and effectively solves the problem that the structure of the washing machine easily causes the water leakage of the box.
  • the embodiment of the present invention provides a structure of the upper cover of the washing machine.
  • the upper cover 2 and the control tray 1 are provided with a hinge and an upper cover. 2 is connected to the control tray 1 by a hinge.
  • the hinge structure is used to realize the opening and closing of the upper cover 2 of the washing machine, and the structure is simpler, more convenient to use, and the movement is stable and reliable, which is favorable for popularization and application.
  • the present disclosure provides a cover stop structure for a washing machine, which realizes a stop function in a fully automatic washing machine Under the premise, the structure is simple, the cost is low, the appearance is beautiful, the safety is good, and the problem that the structure of the washing machine in the related art is easy to cause the water leakage of the box is effectively solved.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Main Body Construction Of Washing Machines And Laundry Dryers (AREA)

Abstract

一种洗衣机上盖止挡结构,包括控制盘座(1)和上盖(2),上盖(2)的一端可翻转地设置在控制盘座(1)的一端,且上盖上阵列设置有至少一个卡扣(21),控制盘座(1)上设置有至少一个与卡扣(21)相适配的扣座(11);上盖(2)向远离控制盘座(1)方向打开时带动卡扣(21)旋转,直至卡扣(21)与扣座(1)相抵接;该结构可以在实现止挡作用的前提下,使结构更加美观,能够消除漏水安全隐患。

Description

洗衣机上盖止挡结构及全自动洗衣机 技术领域
本公开涉及洗衣机技术领域,例如涉及一种洗衣机上盖止挡结构以及具有该洗衣机上盖止挡结构的全自动洗衣机。
背景技术
全自动洗衣机上盖是阻隔洗衣机内桶和外观环境的重要组件,可以有如下作用:保证内桶的清洁,以及避免在洗涤过程中用户接触到高速旋转的内桶,保证用户的安全。全自动洗衣机的上盖一般开到与水平面形成92度到95度夹角范围就不允许再向后旋转了,且国标规定上盖完全打开时要保证能够承受向后的50N的拉力而不被破坏,这就需要上盖在保证自身强度的同时也要设计止挡结构。但是市面上全自动洗衣机上盖的止挡结构存在结构较大、不美观、安全性差等问题。
发明内容
本公开提供了一种洗衣机上盖止挡结构及具有该洗衣机上盖止挡结构的全自动洗衣机。可以在实现止挡作用的前提下,使结构更加美观,能够消除漏水安全隐患。
本实施例提供了一种洗衣机上盖止挡结构,可以包括控制盘座和上盖,所述上盖的一端可翻转的设置在所述控制盘座的一端,所述上盖上阵列设置有至少一个卡扣,所述控制盘座上设置有至少一个与所述卡扣相适配的扣座;所述上盖向远离控制盘座方向打开时带动所述卡扣旋转,直至卡扣与所述扣座相抵接。
可选地,所述卡扣设置在所述上盖的下表面,且位于所述上盖的末端。
可选地,所述卡扣可以为楔形卡扣,所述扣座可以为开设在所述控制盘座 上与卡扣外形相配合的卡钩,所述楔形卡扣的端面通过与卡钩的上壁抵接以限制上盖的翻转。
可选地,所述控制盘座上设置有与所述卡扣的转动轨迹相适配的弧形凹槽,所述扣座设置在所述弧形凹槽内或者与所述弧形凹槽相连接。
可选地,所述上盖的下表面设置有与所述卡扣连接的弧形凸起,所述弧形凸起的形状与弧形凹槽的形状相适配。
可选地,所述上盖的末端还可以设有转轴,所述控制盘座的相应位置可以设有轴孔,所述上盖通过转轴、轴孔与控制盘座转动连接。
可选地,所述上盖与控制盘座之间设有铰链,所述上盖与控制盘座通过铰链转动连接。
可选地,所述上盖与控制盘座之间还可以设有缓冲装置,用以使上盖相对控制盘座平稳转动。
可选地,所述卡扣、弧形凸起与上盖为一体式结构,所述扣座、弧形凹槽与控制盘座为一体式结构。
本实施例还提出了一种全自动洗衣机,包括如以上所述的任意一种洗衣机上盖止挡结构。
本实施例通过在上盖上设置卡扣,在控制盘座上设置与卡扣相配合的扣座,当上盖翻转打开至一定角度时,卡扣与扣座相抵接,从而阻止上盖继续向后转动,并使上盖获得支撑,以实现上盖与控制盘座的止挡固定。本实施例采用至少一个卡扣与扣座的抵接实现阻挡,能保证上盖完全打开时可承受向后50N以上的拉力而不致破坏;其中卡扣结构简单,隐蔽性好,避免了相关技术中凸起结构影响产品外观、浪费材料的问题,可以节约生产成本;同时扣座的设计消除了在控制盘座上开孔易引起水流入控制盘座内造成的电器件安全隐患,使得在实现止挡作用的前提下,使用更为安全、可靠。
附图说明
为了更清楚地说明本实施例中的技术方案,下面将对本实施例描述中所需 要使用的附图作简单的介绍。
图1是相关技术提供的全自动洗衣机上盖的结构示意图。
图2是相关技术提供的全自动洗衣机控制盘座的结构示意图。
图3是相关技术提供的全自动洗衣机上盖安装在控制盘座上的结构示意图。
图4是本实施例一提供的上盖的结构示意图。
图5是本实施例一提供的控制盘座的结构示意图。
图6是本实施例一提供的洗衣机上盖止挡结构的剖面结构示意图。
1、控制盘座;11、扣座;12、弧形凹槽;13、轴孔;2、上盖;21、卡扣;22、弧形凸起;23、转轴;
1’、控制盘座;11’、止挡壁;2’、上盖;21’、凸起。
具体实施方式
为使本公开解决的技术问题、采用的技术方案更加清楚,下面将结合附图对本公开的技术方案作相关描述。所描述的实施例仅仅是一部分实施例,而不是全部的实施例。在不冲突的前提下,以下实施例和实施例中的技术方案可以相互组合。
实施例一
如图1-图3所示,市面上的全自动洗衣机上盖2’利用上盖尾部对称设计的两个凸起21’与在控制盘座1’上相应设计的两个止挡壁11’实现上盖2’的止挡。当上盖2’完全打开时,上盖2’上两凸起21’与控制盘座1’的止挡壁11’接触,使上盖2’不能再绕旋转轴旋转,从而达到了止挡的效果。但是这种结构有以下缺点:上盖2’设计的凸起21’结构一般较大,影响了盖子的美观程度且还浪费材料;这种止挡结构需要在控制盘座1’上相应的开两个较大的方孔,如此水很容易从两方孔中流入控制盘座内造成电器件的安全隐患。
因此,全自动洗衣机上盖的止挡结构存在结构较大、不美观、安全性差等问题。
如图4-图6所示,本实施例提供了一种洗衣机上盖止挡结构,可以包括控 制盘座1和上盖2,上盖2的一端可翻转的设置在控制盘座1的一端,其中上盖2的下表面靠近末端处阵列设置有至少一个卡扣21,控制盘座1上设置有至少一个与卡扣21相适配的扣座11;当上盖2向远离控制盘座1方向打开时可带动卡扣21旋转,直至卡扣21与扣座11相抵接。
可选地,如图6所示,所述上盖2的下表面可以是指上盖靠近控制盘坐1的面。
通过在上盖2上设置卡扣21,在控制盘座1上设置与卡扣21相配合的扣座11,将静止的凸起结构变成运动的,使洗衣机上盖2在完全打开时,运动的卡扣21、扣座11正好开始起作用,从而达到止挡上盖2继续旋转的作用。
可选地,在上盖2下表面根据强度要求对称设计一排卡扣21(如图4所示),相较相关技术中的凸起结构而言,由于卡扣21较小,节省了一定的原材料。并且卡扣21位于暗处,上盖2扣合后能够确保卡扣21不影响美观。控制盘座1上对应上盖2的一排卡扣21也设计了一排扣座11(如图5所示),由于扣座11不会导致控制盘座1上出现通孔,因此不会有水流入,从而保证了安全性。当上盖2完全打开时,恰好是卡扣21与扣座11接触的时候,由于扣座11结构的止挡,上盖2无法继续旋转从而达到了止挡的效果(如图6所示),同时也保证了上盖2可承受向后50N以上的拉力而不致被破坏。
可选地,上盖2上均匀设有5个卡扣21,控制盘座1上与之相应地均匀设置有5个扣座11,且卡扣21为楔形卡扣,扣座11为开设在控制盘座1上与卡扣21外形相配合的卡钩,楔形卡扣的端面通过与卡钩的上壁抵接以限制上盖2的翻转。当上盖2相对控制盘座1旋转一定角度后,卡钩上端与卡扣21完全贴合,从而阻挡卡扣21继续转动,以将上盖2相对控制盘座1定位于上述固定角度。
可选地,控制盘座1上设置有与卡扣21的转动轨迹相适配的弧形凹槽12,扣座11设置在弧形凹槽12内或者与弧形凹槽12相连接。相应地,上盖2的下表面与卡扣21连接的部分设有弧形凸起22,弧形凸起22的形状与弧形凹槽12的形状相适配。此处,为便于加工,同时提高产品的强度,卡扣21、弧形凸起 22与上盖2设为一体式结构,扣座11、弧形凹槽12与控制盘座1也设为一体式结构。上盖2在转动过程中,弧形凸起22与弧形凹槽12相抵,并沿弧形凹槽12运动,由于二者之间的弹力作用,使上盖2在打开或者关闭过程中始终平稳无晃动,保证机体工作可靠性。
另外,在上盖2相对控制盘座1频繁的开启和关闭过程中,由于卡扣21不断地冲击扣座11将导致卡扣21、扣座11受到磨损,严重的可能导致上盖2无法正常使用,因此,本实施例卡扣21和扣座11的材料可选为耐磨类塑胶材料,以提高该上盖止挡结构的使用寿命。
可选地,本实施例上盖2的末端还设有转轴23,控制盘座1的相应位置设有轴孔13,上盖2通过转轴23、轴孔13与控制盘座1转动连接。为避免上盖2在使用时突然开启或关闭,影响用户的安全,在上盖2与控制盘座1之间还可以设有缓冲装置,能够实现上盖2相对控制盘座1平稳转动。
本实施例还提出一种全自动洗衣机,可以包括如以上所述的洗衣机上盖止挡结构。
本实施例的全自动洗衣机在实现止挡作用的前提下,结构更简单,成本更低,外形更美观,且安全性较好,有效解决了洗衣机结构容易引起箱体漏水的问题。
实施例二
本实施例提出一种洗衣机上盖止挡结构,与实施例一所述的洗衣机上盖止挡结构基本相似,区别之处在于:上盖2与控制盘座1之间设有铰链,上盖2与控制盘座1通过铰链转动连接。本实施例利用铰链结构实现洗衣机上盖2的开合,其结构更简单、使用更方便、且运动平稳可靠,有利于推广应用。当上盖2转至完全打开状态时,上盖2上的一排卡扣21恰好被控制盘座1上的一排扣座11勾住,从而起到止挡效果。
工业实用性
本公开提供了一种洗衣机上盖止挡结构,在全自动洗衣机在实现止挡作用 的前提下,结构简单,成本低,外形美观,安全性好,有效解决相关技术中的洗衣机结构易引起箱体漏水的问题。

Claims (10)

  1. 一种洗衣机上盖止挡结构,包括控制盘座(1)和上盖(2),所述上盖(2)的一端可翻转的设置在所述控制盘座(1)的一端,所述上盖(2)上阵列设置有至少一个卡扣(21),所述控制盘座(1)上设置有至少一个与所述卡扣(21)相适配的扣座(11);所述上盖(2)向远离控制盘座(1)方向打开时带动所述卡扣(21)旋转,直至卡扣(21)与所述扣座(11)相抵接。
  2. 根据权利要求1所述的洗衣机上盖止挡结构,其中,所述卡扣(21)设置在所述上盖(2)的下表面,且位于所述上盖(2)的末端。
  3. 根据权利要求2所述的洗衣机上盖止挡结构,其中,所述卡扣(21)为楔形卡扣,所述扣座(11)为开设在所述控制盘座(1)上与卡扣(21)外形相配合的卡钩,所述楔形卡扣的端面通过与卡钩的上壁抵接以限制上盖(2)的翻转。
  4. 根据权利要求2所述的洗衣机上盖止挡结构,其中,所述控制盘座(1)上设置有与所述卡扣(21)的转动轨迹相适配的弧形凹槽(12),所述扣座(11)设置在所述弧形凹槽(12)内或者与所述弧形凹槽(12)相连接。
  5. 根据权利要求4所述的洗衣机上盖止挡结构,其中,所述上盖(2)的下表面设置有与所述卡扣(21)连接的弧形凸起(22),所述弧形凸起(22)的形状与弧形凹槽(12)的形状相适配。
  6. 根据权利要求1所述的洗衣机上盖止挡结构,其中,所述上盖(2)的末端还设有转轴(23),所述控制盘座(1)的相应位置设有轴孔(13),所述上盖(2)通过转轴(23)、轴孔(13)与控制盘座(1)转动连接。
  7. 根据权利要求1所述的洗衣机上盖止挡结构,其中,所述上盖(2)与控制盘座(1)之间设有铰链,所述上盖(2)与控制盘座(1)通过铰链转动连接。
  8. 根据权利要求6或7所述的洗衣机上盖止挡结构,其中,所述上盖(2)与控制盘座(1)之间还设有缓冲装置,用以使上盖(2)相对控制盘座(1)平稳转动。
  9. 根据权利要求5所述的洗衣机上盖止挡结构,其中,所述卡扣(21)、 弧形凸起(22)与上盖(2)为一体式结构,所述扣座(11)、弧形凹槽(12)与控制盘座(1)为一体式结构。
  10. 一种全自动洗衣机,包括如权利要求1至9任一项所述的洗衣机上盖止挡结构。
PCT/CN2017/081520 2016-04-21 2017-04-21 洗衣机上盖止挡结构及全自动洗衣机 WO2017181999A1 (zh)

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